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May 3, 20260 citations

Sirtuin 7 ameliorates hypertensive intestinal injury by restoring epithelial barrier integrity and gut microbiota homeostasis.

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SWSiyuan WangMWMinjie WangXZXinyu Zhou

Key Result

SIRT7 overexpression in spontaneously hypertensive rats alleviated intestinal fibrosis, structural damage, and permeability, while partially reversing hypertension-associated gut microbiota dysbiosis.

Key Points

  • This study investigates SIRT7's role in protecting the intestinal barrier and gut microbiota during hypertension.
  • Assessed SIRT7 expression and intestinal pathology in spontaneously hypertensive rats (SHRs).
  • Established intestinal SIRT7 overexpression model in SHRs to evaluate effects on dysfunction and microbial composition.
  • Conducted histological and immunofluorescence staining, and 16S rRNA amplicon sequencing for gut microbiota analysis.
  • SIRT7 deficiency was noted in hypertensive rats, correlating with reduced tight junction protein expression and intestinal damage.
  • SIRT7 overexpression significantly reduced intestinal fibrosis and permeability.
  • Restoration of SIRT7 partially reversed hypertension-associated gut microbiota dysbiosis.

Structured PICO

Does intestinal SIRT7 overexpression improve intestinal dysfunction and microbial composition in spontaneously hypertensive rats?

P
Population
Spontaneously hypertensive rats (SHRs)
I
Intervention
Intestinal SIRT7 overexpression
O
Outcome
Intestinal dysfunction, microbial composition, intestinal fibrosis, structural damage, and intestinal permeabilitysurrogate

SIRT7 overexpression protects against hypertensive intestinal injury by restoring epithelial barrier integrity and gut microbiota homeostasis in a rat model.

Abstract

)-dependent deacetylase, has been identified as a crucial regulator in the progression of cardiovascular diseases through multiple mechanistic pathways. However, the roles and underlying mechanisms of SIRT7 in the development of hypertensive intestinal injury remains unclear, and further investigation is required to determine whether SIRT7 can alleviate intestinal damage through modulation of the gut microbiota. In this study, SIRT7 expression and intestinal pathology were assessed in spontaneously hypertensive rats (SHRs). An intestinal SIRT7 overexpression model was subsequently established in SHRs to evaluate its effects on intestinal dysfunction and microbial composition. Histological and immunofluorescence staining were performed to examine the small intestine, and 16S rRNA amplicon sequencing was conducted to analyze the gut microbiota. There was a marked deficiency of SIRT7 in the intestinal tract of hypertensive animals, which was closely associated with reduced expression of tight junction proteins, including Occludin and zonula occludens-1, as well as intestinal pathological damage in SHRs. SIRT7 overexpression strikingly alleviated intestinal fibrosis, structural damage, and increased intestinal permeability. More importantly, restoration of SIRT7 partially reversed hypertension-associated gut microbiota dysbiosis. In summary, our findings provide novel mechanistic insights into the role of SIRT7 as a critical protector of intestinal barrier integrity and microenvironmental homeostasis under hypertensive stress, and highlight the intricate interplay between SIRT7 and the gut microbiota during hypertension.

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Cite This Study

Wang et al. (2026) studied Hypertensive intestinal injury. SIRT7 overexpression was evaluated on Intestinal pathology, barrier integrity, and gut microbiota composition. SIRT7 overexpression in spontaneously hypertensive rats alleviated intestinal fibrosis, structural damage, and permeability, while partially reversing hypertension-associated gut microbiota dysbiosis.

synapsesocial.com/papers/69f6e6648071d4f1bdfc719fhttps://doi.org/10.1007/s00018-026-06229-7
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